2018
DOI: 10.1016/j.biomaterials.2018.07.028
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Magnetic field-inducible drug-eluting nanoparticles for image-guided thermo-chemotherapy

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Cited by 88 publications
(73 citation statements)
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“…[ 52 , 53 ]. Two mechanisms are important for controlled drug release in the presence of an external magnetic stimulus: one is hyperthermia [ 54 ], and the other is drug targeting guided by a magnetic field [ 55 ]. Hypothermia-derived nanocarriers have gained significant attention in recent years.…”
Section: Types Of Stimulimentioning
confidence: 99%
See 1 more Smart Citation
“…[ 52 , 53 ]. Two mechanisms are important for controlled drug release in the presence of an external magnetic stimulus: one is hyperthermia [ 54 ], and the other is drug targeting guided by a magnetic field [ 55 ]. Hypothermia-derived nanocarriers have gained significant attention in recent years.…”
Section: Types Of Stimulimentioning
confidence: 99%
“…Upon exposure to a magnetic field, SPIONs generated heat that led to the release of the drug. The success of this platform in both in vivo and in vitro studies revealed its promising chemotherapeutic attributes that should be explored in the future [ 54 ]. However, this system needs further investigation to overcome the problem of low drug loading and reduced specificity.…”
Section: Types Of Stimulimentioning
confidence: 99%
“…So far, iron oxide NPs have been employed for example in hyperthermia therapy on mice (18 mg Fe kg −1 body mass) or in photothermal therapy (coated with polypyrrole) acting as a target component to guide the NPs to the tumor site under an external magnetic field (3.3 mg Fe kg −1 body mass) [30,31]. The final concentration of Fe in the sample (30-50 μg mL −1 ) was determined by taking into account the abovementioned range of Fe doses and assuming the average body mass of a man as 70 kg and a blood volume of 5 L. The proper dilution of the protein-containing media also needs to be considered to prevent adsorption of the excess proteins onto the wall of the separation capillary, while also enabling observation of the sulfur signal originating from proteins.…”
Section: Preparation Of the Samplesmentioning
confidence: 99%
“…Upon irradiation with an infrared laser or under the influence of an alternating magnetic field, many magnetic NPs undergo hyperthermia. It can be utilized in two major ways: enhanced drug release through the heat-expansion of a polymer coat (Zhang C. et al, 2017 ; Vijayan et al, 2019 ) and achieving temperatures above the minimum for inducing apoptosis (42°C) of surrounding cells (Thirunavukkarasu et al, 2018 ; Yar et al, 2018 ; Fetiveau et al, 2019 ) or by a combination of both methods (Vijayan et al, 2019 ). In all cases, once the nanomaterials had accumulated at the tumor site, they were triggered to reach required temperatures, resulting in a highly controlled and localized method for killing cancer cells.…”
Section: Therapeutic Propertiesmentioning
confidence: 99%